EP1786287B1 - Structurally flexible artificial nails - Google Patents

Structurally flexible artificial nails Download PDF

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Publication number
EP1786287B1
EP1786287B1 EP05786762.4A EP05786762A EP1786287B1 EP 1786287 B1 EP1786287 B1 EP 1786287B1 EP 05786762 A EP05786762 A EP 05786762A EP 1786287 B1 EP1786287 B1 EP 1786287B1
Authority
EP
European Patent Office
Prior art keywords
nail
edge
thickness
proximate
distal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Not-in-force
Application number
EP05786762.4A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP1786287A4 (en
EP1786287A1 (en
Inventor
Joseph Michael Fracassi
Jeanine Catherine Coppola
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Pacific World Corp
Original Assignee
Pacific World Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Pacific World Corp filed Critical Pacific World Corp
Publication of EP1786287A1 publication Critical patent/EP1786287A1/en
Publication of EP1786287A4 publication Critical patent/EP1786287A4/en
Application granted granted Critical
Publication of EP1786287B1 publication Critical patent/EP1786287B1/en
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D31/00Artificial nails

Definitions

  • This invention pertains generally to human fingernail decorations, and more particularly to artificial nails that are intended to be adhered to a human's natural fingernail.
  • Such nails are readily available to a wide range of users through drug and department stores.
  • Such preformed artificial nails may be clear or opaque, and/or prepolished and/or decorated to provide the desired appearance.
  • Artificial nails are commonly made from molded thermoplastic and are available in a wide range of lengths and styles.
  • One broad category of an artificial nail style is the full nail form.
  • the full nail form simulates the entire human fingernail and includes a proximate edge intended to overlay substantially the entire nail bed and a distal free edge which is intended to extend beyond the fingertip of the wearer.
  • the proximate edge is shaped to be disposed substantially adjacent or abut against the cuticle of the finger.
  • the distal free edge may have any of various lengths and shapes, such as oval, square, or flared, depending upon the desired look.
  • the artificial nail is typically formed with a curvature between a first side edge and a second side and a curvature between the proximate and distal edges.
  • the artificial nail is sufficiently durable and rigid to withstand the hazards inherent in its use.
  • manufactures typically provide users with a range of nail sizes, e.g., identified by size numbers 0-9, to accommodate most nail sizes.
  • artificial nails are packaged together in sets including a range of different sizes so that the purchaser receives differently artificial nails for their different fingers.
  • the package may also include liquid adhesive and/or peel-off adhesive pads for bonding the artificial nails to the purchaser's natural fingernails.
  • Variations between the curvatures of the preformed artificial nail and the natural nail may affect the integrity of the attachment to the nail, the comfort to the wearer, and the aesthetic appeal of the nail when secured to the natural nail.
  • some individuals have one or more relatively flat nail beds.
  • When attaching an artificial nail that is more curved than the natural nail bed there will be a gap between the artificial and natural nail bed.
  • a proportionally greater amount of adhesive must be applied.
  • the best bond is obtained from a thin layer of glue between adjacently disposed artificial and natural nail surfaces. A greater amount of glue may result in the formation of air pockets within the volume of glue, weakening the bond.
  • GB-A-725,969 and GB 752 960 discloses artificial finger and toe nails formed of a synthetic material.
  • the nail is very thin at the side edges and at its rear edge. It tapers at these edges.
  • a preformed artificial nail a preformed artificial nail adapted to substantially cover an upper surface of a user's natural nail, the upper surface of the natural nail extending from a cuticle and having an oppositely disposed free edge, the artificial nail comprising:
  • US 3502088 discloses also an artificial nail formed of a single material.
  • the invention provides a preformed artificial nail according to claim 1 that is designed to allow the artificial nail to flex and conform to the curved shape of a nail bed of a natural fingernail along the nail bed portion, while maintaining the strength and durability of conventional nails.
  • the thickness of the artificial nail body continuously increases between the proximate edge and the distal edge. Accordingly, the portion of the nail body corresponding to the proximate edge is sufficiently thin to demonstrate a degree of flexibility while the portion corresponding to the distal end is sufficiently thick to provide strength to the artificial nail. In this way, the flexibility of the artificial nail increases as along the length of the nail from a relatively rigid distal end portion to a relatively flexible proximate portion. Thus, the flexibility associated with the portion of the artificial nail corresponding to the proximate edge allows that portion of the artificial nail to be pressed adjacent to the nail bed.
  • the flexible portion of the artificial nail can deform to mirror the curve of the nail bed between the first and second sides of the wear's own natural fingernail.
  • the inventive nail will result in a reduction, and, sometimes, elimination of the pain often caused to the user by the arched nail seeking to return to its free state and exerting and upward force on a flatter natural nail bed or the edges of a more curved natural nail bed.
  • the invention minimizes the chances of formation of air pockets within the layer of glue between the artificial and natural nails.
  • an advantage of the invention is that it provides a stronger bond between the artificial nail and the natural fingernail, and a reduction in user discomfort.
  • Another advantage is that the invention provides a more natural appearing transition between the artificial nail and the nail bed, and is therefore more aesthetically pleasing.
  • FIG. 1 an artificial nail 100 designed in accordance with the teachings of the invention.
  • the artificial nail 100 includes a nail body 110 having an upper surface 112 and a lower surface 114.
  • the lower surface 114 is intended to overlay the natural fingernail of the wearer.
  • a liquid adhesive or an adhesive pad is typically placed between the lower surface 114 and the nail bed of the natural fingernail while the nail body and natural fingernail are pressed together.
  • the term bonded will include both temporary or more permanent adhesion.
  • the adhesive or adhesive pad is degradable along at least the interface with the natural nail to permit easy removal of the artificial nail with an appropriate, safe solution.
  • the nail body 110 has an elongated shape and extends between a proximate edge 120 and a spaced-apart distal end 122.
  • the proximate edge 120 demarcates a corresponding proximate region 124 of the nail body 110 while the distal end 120 likewise demarcates a corresponding distal region 126.
  • the proximate region 124 is disposed adjacent the natural nail bed while the distal region 126 typically extends beyond the free edge of the wearer's finger nail.
  • Extending between the proximate edge 120 and the distal edge 122 are a first side edge 130 and a generally opposing second side edge 132.
  • the proximate edge 120 is typically shaped as a rounded curve extending between the first and second side edge 130, 132.
  • the distal edge 122 in contrast to the proximate edge 120, is generally squared-off.
  • the shape of the distal edge 122 is a function of fashion and the squared-off appearance is only one example of the possible shapes that the distal edge can have. For example, the shape could alternately be expanded and/or flattened at or along the free edge.
  • the length of the nail body 110 is defined between the proximate and distal edges 120, 122 while the width of the nail body is defined between the first and second side edges 130, 132.
  • the nail body 110 is formed with a curved or an arched shape between the first and second side edges 130, 132.
  • the upper surface 112 is generally convex while the lower surface 114 is generally concave.
  • the apex of the nail body 110 will lie above the first and second side edges 130, 132.
  • the nail body 110 generally curves over its length between the proximate edge 120 and the distal edge. It will be appreciated, however, that alternate shapes may be provided, such as, for example, relatively short "sport" nails, or nails having an expanded shape such as those disclosed in U.S. Application 29/197354 , which is assigned to the assignee of the present application.
  • the proximate region 124 of the nail 100 is provided with a degree of flexibility such that the preformed artificial nail may be flattened or provided with a greater arch to cause the artificial nail 100 to conform more closely to a user's natural finger nail.
  • the thickness of the nail body 110 defined between the first and second surfaces 112, 114 increases over the length of the nail body from the proximate edge 120 to the distal edge 122. Accordingly, as compared in FIGS. 9 and 10 , the thickness of the nail body 110 measured within the proximate region 124 is substantially less than the thickness measured within the distal region 126.
  • the thinner proximate region 124 demonstrates a substantially greater degree of flexibility compared to the thicker distal region 126 which demonstrates a relative degree of rigidity.
  • the proximate region 124 may be "flattened” to conform to the natural shape of a flatter natural nail bed, or the first and second side edges 130, 132 drawn more toward each other to more closely conform to a natural nail with a greater arch from side to side.
  • the artificial nail may still be utilized in that it may be conformed to the natural nail bed in placement.
  • the portions of the first and second side edges 130, 132 extending from the proximate edge 120 contact the nail bed first and are deflected apart until the lower surface 114 of the nail body 110 corresponding to the proximate region 124 lies adjacent the natural fingernail.
  • the portions of the first and second side edges 130, 132 extending from the proximate edge 120 may be manually arched downward to contact the nail bed until the proximate portion of lower surface 114 of the nail body 110 conforms to the proximate region 124 of the natural fingernail.
  • the proximate region 124 By conforming the proximate region 124 to adjacently contact the nail bed, a stronger bond between the artificial nail 100 and natural fingernail is produced. Specifically, where liquid adhesive or adhesive pads are used to bond the artificial nail 100 to the natural fingernail, the adhesive bond between the lower surface 114 and the natural fingernail will have a more uniform profile along the curvature of the natural fingernail. Additionally, because of the added flexibility of the proximate region 124, the nail body 110 will have less of a tendency to separate itself from the natural fingernail due to the resilient forces of the nail body material. This is especially advantageous during application when the artificial nail 110 has been pressed adjacent to the natural fingernail, but the applied adhesive or adhesive pad has yet to completely cure. Furthermore, conforming the shape of the proximate region 124 to the nail bed provides a more natural appearing and aesthetically pleasing joinder between the two.
  • the distal region 122 is more rigid than the flexible proximate region 124, that the portion of the artificial nail 100 intended to extend beyond the natural finger nail free edge is provided with added strength relative to the proximate region 124.
  • the artificial nail is more resistant to deformation due to impact with external objects. Accordingly, the artificial nail 100 is more durable and can last longer once applied than an artificial nail of a substantially continuous reduced thickness.
  • the thickness of the nail body 110 increases continuously between the proximate edge 120 and the distal edge 122. Accordingly, the transition between regions of flexibility and rigidity occurs gradually with the most flexibility occurring at the proximate edge 120 and the most rigidity occurring at the distal edge 122.
  • the gradual transition between regions of flexibility and rigidity enables the nail body 110 to accommodate nail beds of various shapes, lengths, and sizes thereby making the artificial nail 100 more versatile. If, for example, the proximate portion of an artificial nail was provided with a constant thickness, and the distal portion with a greater, alternate constant thickness, and a step provided between to the two, the step would necessarily be placed at or beyond the distal edge of the user's natural nail. As a result, a given preformed artificial nail would necessarily only properly fit a very limited range of nail lengths. In contrast, the preformed artificial nail 100 having a gradual transition from the proximate to distal ends may be successfully utilized on substantially any length of nail.
  • the mold for the nail body 110 can be designed such that the gates for introducing molten thermoplastic access the mold cavity proximate a side that corresponds to the distal edge 122.
  • the molten thermoplastic flows within the mold cavity between two converging surfaces that correspond to the upper and lower surfaces 112, 114 toward a side that corresponds to the proximate edge, whereat a vent for displaced air can be loaded. While molding the nail body 110 in this manner reduces the chance that voids will be formed within the nail body, it will be appreciated that any other appropriate methods may be utilized to fabricate the nail body 110, however.
  • the desired combinations of flexibility and rigidity preferably can be achieved by increasing the thickness of the nail body 110 between the proximate edge 120 and the distal edge 122 by at least 0.020 of an inch (0.51 mm), and more preferably at least 0.022 of an inch (0.55 mm).
  • the nail body 110 can have a proximate edge 120 with a thickness of 0.009 inches (0.23 mm) and a distal end 122 of 0.035 inches (0.89 mm). Therefore, in this example, the total change in thickness of the length of the nail body is 0.026 inches (0.66 mm).
  • the thickness of the nail body decreases from the distal edge 122 to the proximate edge 120 by at least about 70% and more preferably by about 75%.
  • FIG. 11 An example of a nail body 110 having a preferred change in thickness is illustrated in FIG. 11 .
  • the change in thickness occurs substantially continuously and substantially consistently over the length of the nail body 110.
  • the thickness measured at the proximate edge 120 of the nail body is about 0.009 inches (0.23 mm)
  • the thickness measured at 1/8 of the overall length of the nail body from the proximate edge is about 0.012 inches (0.30 mm)
  • the thickness measured at 1/4 of the overall length is about 0.015 inches (0.38 mm)
  • the thickness measured at 3/8 of the overall length is about 0.018 inches (0.46 mm)
  • the thickness measured at 1/2 of the overall length is about 0.021 inches (0.53 mm)
  • the thickness measured at 5/8 of the overall length is about 0.024 inches (0.61 mm)
  • the thickness measure at 3/4 of the overall length is about 0.027 inches (0.69 mm)
  • the thickness measured at 7/8 of the overall length is about 0.031 inches (0.78 mm)
  • the thickness of the nail body 110 increases between approximately 0.003-0.004 inches (0.07-0.09 mm) over every 1/8 of the length of the nail body. It will be appreciated by those of skill in the art, however, that alternate thicknesses are likewise within the purview of the invention. By way of example only, for these same locations, i .
  • alternate measures may be provided, such as 0.009 inches (0.23 mm), 0.012 inches (0.30 mm), 0.013 or 0.0135 inches (0.33 or 0.34 mm), 0.015 inches (0.38 mm), 0.016 or 0.018 inches (0.41-0.46 mm), 0.0195 or 0.021 inches (0.50-0.53 mm), 0.022 or 0.023 inches (0.55-0.58 mm), 0.025 or 0.026 inches (0.63-0.0.66 mm), and 0.0312 inches (0.80 mm), respectively.
  • the preferred change in thickness of at least 0.022 inches (0.55 mm), and more preferably about 0.026 inches (0.66 mm), can be the same for a variety of nail body lengths. It will be appreciated that the smaller artificial nails will have a correspondingly smaller flexible proximate region and a smaller rigid distal region. However, to achieve the same transition between relative degrees of flexibility and rigidity across the length for the various nail body sizes, the thickness of each nail body should still preferably change at least 0.022 inches (0.55 mm), and preferably about 0.026 inches (0.66 mm).
  • artificial nail bodies of differing length intend to be applied to different fingers should preferably each all increase in thickness at least about 0.022 inches (0.55 mm), and preferably about 0.026 inches (0.66 mm), between the proximate edge and the distal edge.
  • the nail body 110 can be made from any suitable material and preferably is made from thermoplastic.
  • suitable thermoplastic materials include acrylonitrile butadiene styrene (ABS), polyethylene (PE), polyvinyl chloride (PVC), polystyrene and polyethylene-terephthalate (PET) and combinations thereof, by coextrusion or otherwise.
  • ABS acrylonitrile butadiene styrene
  • PE polyethylene
  • PVC polyvinyl chloride
  • PET polystyrene and polyethylene-terephthalate
  • the composition of material in the nail body is consistently uniform throughout.
  • the artificial nails can be opaque, translucent, or transparent. Additionally, the artificial nails can be provided in various colors and glosses that simulate painted fingernails and may include nail tattoos or charms. Moreover, the artificial nails can be painted or formed in different colors and patterns to simulate decorations such as strips or flowers. In further embodiments, the artificial nails can be formed with raised protuberances that are shaped to simulate, for example, decorative flowers.

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  • Orthopedics, Nursing, And Contraception (AREA)
  • Prostheses (AREA)
  • Materials For Medical Uses (AREA)
EP05786762.4A 2004-08-16 2005-08-16 Structurally flexible artificial nails Not-in-force EP1786287B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US60189504P 2004-08-16 2004-08-16
PCT/US2005/029170 WO2006023512A1 (en) 2004-08-16 2005-08-16 Structurally flexible artificial nails

Publications (3)

Publication Number Publication Date
EP1786287A1 EP1786287A1 (en) 2007-05-23
EP1786287A4 EP1786287A4 (en) 2008-04-16
EP1786287B1 true EP1786287B1 (en) 2016-08-24

Family

ID=35967867

Family Applications (1)

Application Number Title Priority Date Filing Date
EP05786762.4A Not-in-force EP1786287B1 (en) 2004-08-16 2005-08-16 Structurally flexible artificial nails

Country Status (10)

Country Link
US (1) US7506652B2 (xx)
EP (1) EP1786287B1 (xx)
JP (1) JP2008509796A (xx)
CN (1) CN101031218B (xx)
CA (1) CA2576764C (xx)
DK (1) DK1786287T3 (xx)
ES (1) ES2596529T3 (xx)
HK (1) HK1103608A1 (xx)
MX (1) MX2007001927A (xx)
WO (1) WO2006023512A1 (xx)

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US7677257B2 (en) * 2002-10-28 2010-03-16 Kiss Nail Products, Inc. Artificial nail and method of forming same
US8448648B2 (en) * 2002-10-28 2013-05-28 Kiss Nail Products, Inc. Artificial nail and method of forming same
US7337783B2 (en) 2002-10-28 2008-03-04 Kiss Nail Products, Inc. Fingernail accessory and method of forming an artificial fingernail
US7161833B2 (en) * 2004-02-06 2007-01-09 Sandisk Corporation Self-boosting system for flash memory cells
US8210185B2 (en) * 2004-08-16 2012-07-03 Pacific World Corporation Structurally flexible artificial nails
MX2011001220A (es) 2008-08-01 2011-06-09 Pacific World Corp Uñas artificiales flexibles que incluyen lengüetas de aplicacion.
WO2010014935A1 (en) 2008-08-01 2010-02-04 Pacific World Corporation Flexible artificial nails and method of forming same
JP5288932B2 (ja) * 2008-08-05 2013-09-11 株式会社ウイング・ビート 付け爪チップ
FR2949678B1 (fr) * 2009-09-08 2011-11-25 Oreal Procede de maquillage des ongles et article pour la mise en oeuvre du procede
FR2949679B1 (fr) * 2009-09-08 2012-02-24 Oreal Procede de maquillage des ongles et article pour la mise en oeuvre du procede
JP5622401B2 (ja) * 2010-02-12 2014-11-12 株式会社ウイング・ビート 付け爪
FR2964305B1 (fr) * 2010-09-06 2019-06-28 L'oreal Procede de fabrication d'articles cosmetiques personnalises, notamment de faux ongles et articles ainsi realises
KR101291608B1 (ko) * 2012-11-13 2013-08-01 제이씨코리아 주식회사 인조네일 제조방법 및 인조네일
DE102013109477A1 (de) * 2013-08-30 2015-03-05 Hermann Hogg Verfahren zur Herstellung von Fingernagel-Tips
KR101919951B1 (ko) * 2017-02-17 2018-11-19 (주)위더스아이엔씨코리아 플랙서블 인조손톱
US12089714B2 (en) * 2019-09-26 2024-09-17 Applied Lacquer Industries Inc. Gel nail and producing method thereof
JP1713606S (ja) * 2020-07-03 2022-04-26 つけ爪
USD987188S1 (en) * 2021-03-23 2023-05-23 Shenzhen Yichen Technology Co., Ltd. Stiletto nail form

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Also Published As

Publication number Publication date
CA2576764A1 (en) 2006-03-02
US20070051384A1 (en) 2007-03-08
CN101031218A (zh) 2007-09-05
CA2576764C (en) 2011-05-24
DK1786287T3 (en) 2016-12-12
CN101031218B (zh) 2010-12-01
EP1786287A4 (en) 2008-04-16
HK1103608A1 (en) 2007-12-28
JP2008509796A (ja) 2008-04-03
ES2596529T3 (es) 2017-01-10
EP1786287A1 (en) 2007-05-23
US7506652B2 (en) 2009-03-24
MX2007001927A (es) 2007-07-11
WO2006023512A1 (en) 2006-03-02

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